概述
产品名称
RUNX2 Recombinant Rabbit Monoclonal Antibody [SD208-0]
抗体类型
Recombinant Rabbit monoclonal Antibody
免疫原
Recombinant protein within human 300-450.
种属反应性
Human, Mouse, Rat
验证应用
IF-Cell, IF-Tissue, IHC-P, WB, FC, IP, mIHC
分子量
Predicted band size: 57 kDa
阳性对照
MDA-MB-231 cell lysate, Saos-2 cell lysate, NIH/3T3 cell lysate, Saos-2, SW480, human tonsil tissue, human colon tissue, human spleen tissue, mouse bone tissue, rat maxilla tissue, C2C12.
偶联
unconjugated
克隆号
SD208-0
RRID
产品特性
形态
Liquid
存放说明
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). It is recommended to aliquot into single-use upon delivery. Store at -20℃ long term.
存储缓冲液
1*TBS (pH7.4), 0.05% BSA, 40% Glycerol. Preservative: 0.05% Sodium Azide.
亚型
IgG
纯化方式
Protein A affinity purified.
应用稀释度
-
WB
-
1:5,000-1:10,000
-
IF-Cell
-
1:1,000-1:5,000
-
IF-Tissue
-
1:200-1:500
-
IHC-P
-
1:200-1:1,000
-
FC
-
1:5,000
-
IP
-
1-2μg/sample
-
mIHC
-
1:2,000
发表文章中的应用
| WB | 查看 69 篇文献如下 |
| IHC-P | 查看 17 篇文献如下 |
| IF | 查看 15 篇文献如下 |
| IHC | 查看 2 篇文献如下 |
| IF-cell | 查看 1 篇文献如下 |
发表文章中的种属
| Mouse | 查看 40 篇文献如下 |
| Rat | 查看 35 篇文献如下 |
| Human | 查看 22 篇文献如下 |
靶点
功能
The mammalian Runt-related transcription factor (RUNX) family comprises three members, RUNX1 (also designated AML-1, PEBP2αB, CBFA2), RUNX2 (also designated AML-3, PEBP2αA, CBFA1, Osf2) and RUNX3 (also designated AML-2, PEBPαC, CBFA3). RUNX family members are DNA-binding proteins that regulate the expression of genes involved in cellular differentiation and cell cycle progression. RUNX2 is essential for skeletal mineralization in that it stimulates osteoblast differentiation of mesenchymal stem cells, promotes chondrocyte hypertrophy and contributes to endothelial cell migration and vascular invasion of developing bones. Regulating RUNX2 expression may be a useful therapeutic tool for promoting bone formation. Mutations in the C-terminus of RUNX2 are associated with cleidocranial dysplasia syndrome, an autosomal-dominant skeletal dysplasia syndrome that is characterized by widely patent calvarial sutures, clavicular hypoplasia, supernumerary teeth, and short stature.
背景文献
1. Wang F et al. PTH/SDF-1a cotherapy induces CD90+CD34- stromal cells migration and promotes tissue regeneration in a rat periodontal defect model. Sci Rep 6:30403 (2016).
2. Pang J et al. ACVR1-Fc suppresses BMP signaling and chondro-osseous differentiation in an in vitro model of Fibrodysplasia ossificans progressiva. Bone 92:29-36 (2016).
组织特异性
Specifically expressed in osteoblasts.
翻译后修饰
Phosphorylated; probably by MAP kinases (MAPK). Phosphorylation by HIPK3 is required for the SPEN/MINT and FGF2 transactivation during osteoblastic differentiation (By similarity). Phosphorylation at Ser-451 by CDK1 promotes endothelial cell proliferation required for tumor angiogenesis probably by facilitating cell cycle progression. Isoform 3 is phosphorylated on Ser-340.
亚细胞定位
Nucleus.
别名
Acute myeloid leukemia 3 protein antibody
Alpha subunit 1 antibody
AML3 antibody
CBF alpha 1 antibody
CBF-alpha-1 antibody
CBFA1 antibody
CCD antibody
CCD1 antibody
Cleidocranial dysplasia 1 antibody
Core binding factor antibody
展开Acute myeloid leukemia 3 protein antibody
Alpha subunit 1 antibody
AML3 antibody
CBF alpha 1 antibody
CBF-alpha-1 antibody
CBFA1 antibody
CCD antibody
CCD1 antibody
Cleidocranial dysplasia 1 antibody
Core binding factor antibody
Core binding factor runt domain alpha subunit 1 antibody
Core binding factor subunit alpha 1 antibody
Core-binding factor subunit alpha-1 antibody
MGC120022 antibody
MGC120023 antibody
Oncogene AML 3 antibody
Oncogene AML-3 antibody
OSF 2 antibody
OSF-2 antibody
OSF2 antibody
Osteoblast specific transcription factor 2 antibody
Osteoblast-specific transcription factor 2 antibody
OTTHUMP00000016533 antibody
PEA2 alpha A antibody
PEA2-alpha A antibody
PEA2aA antibody
PEBP2 alpha A antibody
PEBP2-alpha A antibody
PEBP2A1 antibody
PEBP2A2 antibody
PEBP2aA antibody
PEBP2aA1 antibody
Polyomavirus enhancer binding protein 2 alpha A subunit antibody
Polyomavirus enhancer-binding protein 2 alpha A subunit antibody
Runt domain antibody
Runt related transcription factor 2 antibody
Runt-related transcription factor 2 antibody
RUNX2 antibody
RUNX2_HUMAN antibody
SL3 3 enhancer factor 1 alpha A subunit antibody
SL3-3 enhancer factor 1 alpha A subunit antibody
SL3/AKV core binding factor alpha A subunit antibody
SL3/AKV core-binding factor alpha A subunit antibody
折叠图片
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☑ Relative expression (RE)
Western blot analysis of RUNX2 on different lysates with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/10,000 dilution.
Lane 1: MDA-MB-231 cell lysate
Lane 2: Saos-2 cell lysate
Lane 3: LNCaP cell lysate (low expression)
Lane 4: NIH/3T3 cell lysate
Lysates/proteins at 20 µg/Lane.
Predicted band size: 57 kDa
Observed band size: 57 kDa
Exposure time: 2 minutes 24 seconds; ECL: K1801;
4-20% SDS-PAGE gel.
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature. The primary antibody (ET1612-47) at 1/10,000 dilution was used in 5% NFDM/TBST at 4℃ overnight. Goat Anti-Rabbit IgG - HRP Secondary Antibody (HA1001) at 1/50,000 dilution was used for 1 hour at room temperature. -
☑ Relative expression (RE)
Immunocytochemistry analysis of Saos-2 (positive) and HeLa (negative) labeling RUNX2 with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/5,000 dilution and competitor's antibody at 1/1,000 dilution.
Cells were fixed in 4% paraformaldehyde for 20 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 5 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/5,000 dilution and competitor's antibody at 1/1,000 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (M1305-2, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution. -
☑ Knockdown (KD)
Western blot analysis of RUNX2 on different lysates with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/5,000 dilution.
Lane 1: Saos-2-si NT cell lysate
Lane 2: Saos-2-si RUNX2#1 cell lysate
Lane 3: Saos-2-si RUNX2#2 cell lysate
Lysates/proteins at 10 µg/Lane.
Predicted band size: 57 kDa
Observed band size: 57、55 kDa
Exposure time: 43 seconds; ECL: K1801;
4-20% SDS-PAGE gel.
ET1612-47 was shown to specifically react with RUNX2 in Saos-2-si NT cells. Weakened bands were observed when Saos-2-si RUNX2 samples were tested. Saos-2-si NT and Saos-2-si RUNX2 samples were subjected to SDS-PAGE. Proteins were transferred to a PVDF membrane and blocked with 5% NFDM in TBST for 1 hour at room temperature. The primary antibody (ET1612-47, 1/5,000) and Loading control antibody (Rabbit anti-GAPDH, ET1601-4, 1/10,000) were used in 5% NFDM/TBST at 4℃ overnight. Goat Anti-rabbit IgG-HRP Secondary Antibody (HA1001) at 1:50,000 dilution was used for 1 hour at room temperature. -
Immunocytochemistry analysis of C2C12 cells labeling RUNX2 with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/1,000 dilution.
Cells were fixed in 4% paraformaldehyde for 15 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 15 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/1,000 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (HA601187, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution. -
Immunohistochemical analysis of paraffin-embedded human tonsil tissue with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/1,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1612-47) at 1/1,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded human colon tissue with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/500 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1612-47) at 1/500 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded human spleen tissue with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/500 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1612-47) at 1/500 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded mouse bone tissue with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/200 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) for 2 minutes in microwave oven. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1612-47) at 1/200 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded rat maxilla tissue with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/500 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1612-47) at 1/500 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
RUNX2 was immunoprecipitated from 0.2 mg Saos-2 cell lysate with ET1612-47 at 2 µg/10 µl beads. Western blot was performed from the immunoprecipitate using ET1612-47 at 1/10,000 dilution. Anti-Rabbit IgG for IP Nano-secondary antibody (NBI01H) at 1/5,000 dilution was used for 1 hour at room temperature.
Lane 1: Saos-2 cell lysate (input)
Lane 2: ET1612-47 IP in Saos-2 cell lysate
Lane 3: Rabbit IgG instead of ET1612-47 in Saos-2 cell lysate
Blocking/Dilution buffer: 5% NFDM/TBST
Exposure time: 20 seconds; ECL: K1801 -
mIHC analysis of human tonsils tissue (Formalin/PFA-fixed paraffin-embedded sections) with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/2,000 dilution. The immunostaining was performed with the IRISKitCmTSA Kit (900808). Heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 30 mins at 95℃. DAPI (blue) was used as a nuclear counter stain. Image acquisition was performed with Olympus VS200 Slide Scanner.
-
☑ Knockdown (KD)
Western blot analysis of RUNX2 on different lysates with Rabbit anti-RUNX2 antibody (ET1612-47) at 1/5,000 dilution.
Lane 1: HAP1-parental cell lysate
Lane 2: HAP1-RUNX2 KD cell lysate
Lysates/proteins at 10 µg/Lane.
Predicted band size: 57 kDa
Observed band size: 57 kDa
Exposure time: 40 seconds; ECL: K1802;
4-20% SDS-PAGE gel.
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature. The primary antibody (ET1612-47) at 1/5,000 dilution was used in 5% NFDM/TBST at 4℃ overnight. Goat Anti-Rabbit IgG - HRP Secondary Antibody (HA1001) at 1/50,000 dilution was used for 1 hour at room temperature. -
Flow cytometric analysis of Saos-2 cells labeling RUNX2.
Cells were fixed and permeabilized. Then stained with the primary antibody (ET1612-47, red) at 1/5,000 dilution and competitor's antibody (red) at 1/2,000 dilution, compared with Rabbit IgG Isotype Control (green). After incubation of the primary antibody at +4℃ for an hour, the cells were stained with a iFluor™ 488 conjugate-Goat anti-Rabbit IgG Secondary antibody (HA1121) at 1/1,000 dilution for 30 minutes at +4℃. Unlabelled sample was used as a control (cells without incubation with primary antibody; black).
请注意: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
引文
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Local abaloparatide administration promotes in situ alveolar bone augmentation via FAK-mediated periosteal osteogenesis
Author: Yu Li
PMID: 40890141
期刊: International Journal Of Oral Science
应用: WB
反应种属: Rat
发表时间: 2025 Sept
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Dynamically programmable plant-derived scaffold coordinates alveolar bone repair cascade: Phase-adaptive integration from hemostasis to bone remodeling
Author: Li Song
PMID: 22NOPMID25102401
期刊: Chemical Engineering Journal
应用: WB
反应种属: Mouse
发表时间: 2025 Sept
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Adhesive Hydrogel Barriers Synergistically Promote Bone Regeneration by Self-Constructing Microstress and Mineralization Microenvironment
Author: Senlin Chen, Mingxin Qiao, Yanhua Liu, Zihan He, Shihua Huang, Zhengyi Xu, Wenjia Xie, Jian Wang, Zhou Zhu, Qianbing Wan
PMID: 40421766
期刊: Journal Of Materials Chemistry B
应用: IF
反应种属: Rat
发表时间: 2025 May
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Subchondral injection of human umbilical cord mesenchymal stem cells ameliorates knee osteoarthritis by inhibiting osteoblast apoptosis and TGF-beta activity
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PMID: 40346614
期刊: Stem Cell Research & Therapy
应用: WB
反应种属: Mouse
发表时间: 2025 May
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Mg–Sc alloy promotes angiogenesis–osteogenesis coupling and ameliorates steroid-induced osteonecrosis of the femoral head
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应用: IF
反应种属: Mouse
发表时间: 2025 May
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期刊: Chemistry of Materials
应用: IF
反应种属: Rat
发表时间: 2025 May
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Klotho senses mechanical stimuli and modulates tension-induced osteogenesis
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期刊: Bone
应用: WB
反应种属: Human
发表时间: 2025 Mar
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Compression force regulates cementoblast mineralization via S1PR1/mitophagy axis
Author: Han Wang, Jingwen Cai, Linxin Chen, Sihang Chen, Xinhan Yang, Zhonghan Chen, Linyu Xu
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期刊: FASEB Journal
应用: IF,WB
反应种属: Human
发表时间: 2025 Mar
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Lycium-Barbarum Polysaccharide-Loaded Dual-Crosslinked Rigid Hydrogel Enhances Bone Healing in Diabetic Bone Defects by Scavenging Reactive Oxygen Species
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期刊: Advanced Healthcare Materials
应用: WB
反应种属: Human
发表时间: 2025 Mar
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Acetylation of H3K18 activated by p300 promotes osteogenesis in human adipose-derived mesenchymal stem cells
Author: Liping Zeng, Chen Chen, Yafei Xiong, Yinan Liu, Miao Huang, Junsong Ye, Jianing Zhong, Weijie Peng
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期刊: Biochemical Pharmacology
应用: WB
反应种属: Human
发表时间: 2025 Mar
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Rosmarinic Acid Ameliorates Type 2 Diabetic Osteoporosis by Reducing NLRP3 Expression and Alleviating Osteoblast Pyroptosis via the FOXO1/TXNIP Signaling Pathway
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应用: WB
反应种属: Mouse
发表时间: 2025 Jun
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Knockout of the Staphylococcus aureus virulence gene sdrC promotes Myh7 expression to inhibit the progression of osteomyelitis
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PMID: 40471432
期刊: Journal Of Molecular Histology
应用: IF,IHC
反应种属: Mouse
发表时间: 2025 Jun
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Synergistic effects of polydopamine-coated reduced graphene oxide on osteogenesis and anti-inflammation in periodontitis
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期刊: Journal Of Materials Science-materials In Medicine
应用: WB
反应种属: Rat
发表时间: 2025 Jun
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Mechano-sensitive long noncoding RNA AK091765 inhibits bone formation via microRNA-489-3p binding
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PMID: 27NOPMID25081301
期刊: Acta Astronautica
应用: WB
反应种属: Human
发表时间: 2025 Jun
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期刊: Scientific Reports
应用: WB
反应种属: Human
发表时间: 2025 Jul
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In Situ Assembled Metal-Phenolic Nanozyme Biointerfaces Revitalize Stem Cells and Optimize Diabetic Implant Osseointegration
Author: Xinxiao Chen, Weijia Wang, Yuhan Hu, Jiao Sun, Liguo Zhang, Yi Chen, Jin Liu, Yang Yu, Jianhua Li, Shaohua Ge
PMID: 39935069
期刊: Advanced Healthcare Materials
应用: IF,IHC-P
反应种属: Rat
发表时间: 2025 Feb
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A Di-aptamer-functionalized scaffold promotes bone regeneration by facilitating the selective retention of MSCs and EPCs and then promoting crosstalk between osteogenesis and angiogenesis
Author: Qiandong Yang, Jiangling Zhou, Ming Yang, Jiayi Wei, Yingtao Gui, Fan Yang, Sihao He, Juan Cai, Bo Yu, Qijie Dai, Zhenzhen Tang, Tianyong Hou
PMID: 39985977
期刊: Biomaterials
应用: WB
反应种属: Mouse
发表时间: 2025 Feb
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RKIP regulates bone marrow macrophage differentiation to mediate osteoclastogenesis and H-type vessel formation
Author: Zheng Zeyu, Tao Siyue, Jin Jiayan, Li Yansong, Dai Liya, Huang Zhaobo, Zhao Yihao, Huang Bao, Saijilafu, Lin Wenlong, Wang Xiaojian, Wu Mengrui, Chen Jian, Zhao Fengdong
PMID: 40817102
期刊: Nature Communications
应用: WB
反应种属: Mouse
发表时间: 2025 Aug
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Leptin receptor signaling mediates the distinct tendon–bone interface reconstruction in rotator cuff tears and osteoporosis-comorbid rotator cuff tears
Author: Zhu Dongxu, Zhu Xinrui, Zhang Yingze, Huang Xiaohong
PMID: 40847364
期刊: Stem Cell Research & Therapy
应用: IHC
反应种属: Rat
发表时间: 2025 Aug
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Exosomes derived from umbilical cord mesenchymal stem cells alleviate jaw bone marrow mesenchymal stem cells senescence and restore osteogenic differentiation potential
Author: Li Hongkun, Xu Nuo, Li Shuaichen, Wang Xinjing, Li Anping, Wang Hengxin, Wu Shuang, Zhou Sunxin, Cai Chuan, Zhang Tong
PMID: 40877889
期刊: Stem Cell Research & Therapy
应用: WB
反应种属: Rat
发表时间: 2025 Aug
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Kaempferol combats the osteogenic differentiation damage of periodontal ligament stem cells in periodontitis via regulating EphrinB2-mediated PI3K/Akt and P38 pathways
Author: Jiao Cao, Yue Li, Mengying Si, Shaoyang Ma, Meng Li, Anbang Shi, Jin Liu, Ang Li
PMID: 40220409
期刊: Phytomedicine
应用: WB
反应种属: Human
发表时间: 2025 Apr
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In vitro and in vivo study of concentrated growth factor (CGF) mediating macrophage polarization in bone defect repair
Author: Deng xin, Zheng Junwen, Zou Jiacheng, Xun Qiongyu, He Huanzong, Li peng, Liao juan
PMID: 40337617
期刊: Regenerative Therapy
应用: WB
反应种属: Mouse
发表时间: 2025 Apr
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“The role of mitogen-activated protein kinase signaling pathway in bone formation during mid-palatal suture expansion”
Author: Xiaoyue Xiao, Shujuan Zou, Zhiai Hu, Jianwei Chen
PMID: 40298405
期刊: Connective Tissue Research
应用: IHC-P,WB
反应种属: Rat
发表时间: 2025 Apr
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Investigate the Regulatory Role of Parathyroid Hormone on Condylar Fibrocartilage Homeostasis
Author: Yanjing Zhan, Ziwen Shi, Xianni Yang, Pinyin Cao, Haopeng Yu, Peng Wang, Songsong Zhu, Ruiye Bi
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期刊: Oral Diseases
应用: IF
反应种属: Mouse
发表时间: 2025 Apr
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A pH-Responsive Polyetheretherketone Implant Modified with a Core–Shell Metal–Organic Framework to Promote Antibacterial and Osseointegration Abilities
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期刊: Biomaterials Research
应用: WB
反应种属: Rat
发表时间: 2025 Apr
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Multifunctionally disordered TiO2 nanoneedles prevent periprosthetic infection and enhance osteointegration by killing bacteria and modulating the osteoimmune microenvironment
Author: Yangmengfan Chen, Liqiang Zhou, Ming Guan, Shue Jin, Peng Tan, Xiaoxue Fu, Zongke Zhou
PMID: 39346538
期刊: Theranostics
应用: WB
反应种属: Rat
发表时间: 2024 Sept
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Role and mechanism of Actein on condylar bone metabolism in APOE deletion-induced osteoporotic mice
Author: Linyi Zhou,et al
PMID: 39448001
期刊: Bone
应用: IHC-P
反应种属: Mouse
发表时间: 2024 Oct
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Yam Carbon Dots Promote Bone Defect Repair by Modulating Histone Demethylase 4B
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期刊: International Journal Of Nanomedicine
应用: WB
反应种属: Mouse
发表时间: 2024 Oct
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A human organoid drug screen identifies α2-adrenergic receptor signaling as a therapeutic target for cartilage regeneration
Author: Xiaocui Wei ,et al
PMID: 39353427
期刊: Cell Stem Cell
应用: IF
反应种属: Human
发表时间: 2024 Oct
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Histone deacetylase 9 promotes osteogenic trans-differentiation of vascular smooth muscle cells via ferroptosis in chronic kidney disease vascular calcification
Author: Lin Xiong,et al
PMID: 39500708
期刊: Renal Failure
应用: WB
反应种属: Rat
发表时间: 2024 Nov
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A Rat Model for Microimplant-assisted Rapid Palatal Expansion
Author: Yu Jin,et al
PMID: 39580955
期刊: Biochemical And Biophysical Research Communications
应用: IHC-P
反应种属: Rat
发表时间: 2024 Nov
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Plexin-B2 Mediates Orthodontic Tension-Induced Osteogenesis via the RhoA/F-Actin/YAP Pathway
Author: Qiming Li, Xinyi Chen, Xinyi Li, Xiaoge Jiang, Xingjian Li, Xinrui Men, Yan Li, Song Chen
PMID: 39485327
期刊: Journal Of Periodontal Research
应用: WB
反应种属: Mouse
发表时间: 2024 Nov
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Citation
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TNF-α Regulated Bidirectional Interaction Between Bone Marrow Mesenchymal Stem Cells and Articular Chondrocytes
Author: Yu Huang,et al
PMID: 39567501
期刊: Cartilage
应用: WB
反应种属: Human
发表时间: 2024 Nov
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Citation
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PGC-1α/LDHA signaling facilitates glycolysis initiation to regulate mechanically induced bone remodeling under inflammatory microenvironment
Author: Liu Jiani,et al
PMID: NO PMID20240530
期刊: Bone
应用: WB
反应种属: Rat
发表时间: 2024 May
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Citation
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Beta-adrenergic receptor antagonist propranolol prevents bisphosphonate-related osteonecrosis of the jaw by promoting osteogenesis
Author: Du Qianxin,et al
PMID: 39873080
期刊: Journal Of Dental Sciences
应用: WB
反应种属: Rat
发表时间: 2024 May
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Citation
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YAP maintains cartilage stem/progenitor cell homeostasis in osteoarthritis
Author: Zhang Lina,et al
PMID: 38817242
期刊: Journal Of Orthopaedic Translation
应用: WB
反应种属: Rat
发表时间: 2024 May
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Citation
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Hypomethylation of theLncRNA H19 promoteraccelerates osteogenicdifferentiation of vascularsmooth muscle cells byactivating the Erk1/2pathways
Author: Taoxia Wang,et al
PMID: no pmid240318
期刊: Journal Of International Medical Research
应用: WB
反应种属: Human
发表时间: 2024 Mar
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Citation
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A DNA tetrahedron-based ferroptosis-suppressing nanoparticle: superior delivery of curcumin and alleviation of diabetic osteoporosis
Author: Li Yong,et al
PMID: 38424439
期刊: Bone Research
应用: IF
反应种属: Mouse
发表时间: 2024 Mar
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Citation
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MSX1+ PDGFRAlow limb mesenchyme-like cells as an efficient stem cell source for human cartilage regeneration
Author: Liao Yuansong,et al
PMID: 38428414
期刊: Stem Cell Reports
应用: IF
反应种属: Mouse
发表时间: 2024 Mar
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Citation
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Jintiange capsule ameliorates glucocorticoid-induced osteonecrosis of the femoral head in rats by regulating the activity and differentiation of BMSCs
Author: Xu Hui,et al
PMID: 39262662
期刊: Journal Of Traditional And Complementary Medicine
应用: WB
反应种属: Rat
发表时间: 2024 Mar
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Citation
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Mussel-inspired immunomodulatory and osteoinductive dual-functional hydroxyapatite nanoplatform for promoting bone regeneration
Author: Qin Danlei,et al
PMID: 38849820
期刊: Journal Of Nanobiotechnology
应用: WB
反应种属: Mouse
发表时间: 2024 Jun
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Citation
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Atorvastatin exerts a preventive effect against steroid-induced necrosis of the femoral head by modulating Wnt5a release
Author: Wu Junfeng,et al
PMID: 38971901
期刊: Archives Of Toxicology
应用: WB
反应种属: Rat
发表时间: 2024 Jul
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Citation
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Piezo1 contributes to alveolar bone remodeling by activating β-catenin under compressive stress
Author: Jiang Yunkun,et al
PMID: 38189707
期刊: American Journal Of Orthodontics And Dentofacial Orthopedics
应用: WB,IHC-P
反应种属: Rat
发表时间: 2024 Jan
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Citation
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Polydopamine-Functionalized Strontium Alginate/Hydroxyapatite Composite Microhydrogel Loaded with Vascular Endothelial Growth Factor Promotes Bone Formation and Angiogenesis
Author: Chen Shi,et al
PMID: 38240605
期刊: ACS Applied Materials & Interfaces
应用: WB
反应种属: Rat
发表时间: 2024 Jan
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Citation
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Enhancing aortic valve drug delivery with PAR2-targeting magnetic nano-cargoes for calcification alleviation
Author: Chen Jinyong,et al
PMID: 38228638
期刊: Nature Communications
应用: WB
反应种属: Mouse
发表时间: 2024 Jan
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Citation
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MicroRNA-146a-loaded magnesium silicate nanospheres promote bone regeneration in an inflammatory microenvironment
Author: Yang Jiakang, Shuai Jing, Siow Lixuen, Lu Jingyi, Sun Miao, An Wenyue, Yu Mengfei, Wang Baixiang, Chen Qianming
PMID: 38221522
期刊: Bone Research
应用: WB
反应种属: Human
发表时间: 2024 Jan
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Citation
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Long non‐coding RNA LncTUG1 regulates favourable compression force‐induced cementocytes mineralization via PU. 1/TLR4/SphK1 signalling
Author: Wang Han,et al
PMID: 38318762
期刊: Cell Proliferation
应用: IHC-P
反应种属: Mouse
发表时间: 2024 Feb
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Citation
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METTL3 promotes osteogenic differentiation of human umbilical cord mesenchymal stem cells by upregulating m6A modification of circCTTN
Author: Chen Chujiang,et al
PMID: 38358895
期刊: Bioscience Reports
应用: WB
反应种属: Human
发表时间: 2024 Feb
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Citation
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MicroRNA-29c-tetrahedral framework nucleic acids: Towards osteogenic differentiation of mesenchymal stem cells and bone regeneration in critical-sized calvarial defects
Author: Jiafei Sun, Xingyu Chen, Yunfeng Lin, Xiaoxiao Cai
PMID: 38414296
期刊: Cell Proliferation
应用: IF,WB
反应种属: Rat
发表时间: 2024 Feb
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Citation
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A Multifunctional miRNA Delivery System Based on Tetrahedral Framework Nucleic Acids for Regulating Inflammatory Periodontal Ligament Stem Cells and Attenuating Periodontitis Bone Loss
Author: Haoyan Wu,et al
PMID: 39679863
期刊: ACS Applied Materials & Interfaces
应用: WB
反应种属: Rat
发表时间: 2024 Dec
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Citation
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Photoacoustic Imaging-Guided Self-Adaptive Hyperthermia Supramolecular Cascade Nano-Reactor for Diabetic Periodontal Bone Regeneration
Author: Zhang Miao,et al
PMID: 38785180
期刊: Advanced Science
应用: IF,WB
反应种属: Mouse,Rat
发表时间: 2024 Aug
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Citation
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Granulocyte colony-stimulating factor mediates bone loss via the activation of IL-1β/JNK signaling pathway in murine Staphylococcus aureus-induced osteomyelitis
Author: Song Mingrui,et al
PMID: 39163688
期刊: International Immunopharmacology
应用: WB
反应种属: Mouse
发表时间: 2024 Aug
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Citation
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CDC42‑mediated Wnt signaling facilitates odontogenic differentiation of DPCs during tooth root elongation
Author:
PMID: 37726858
期刊: Stem Cell Research & Therapy
应用: IHC-P
反应种属: Mouse,Rat
发表时间: 2023 Sept
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Citation
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DAP1 regulates osteoblast autophagy via the ATG16L1–LC3 axis in Graves’ disease-induced osteoporosis
Author: Gao Mingdong, Du Zouxi, Dong Qianqian, Su Shan, Tian Limin
PMID: 37735431
期刊: Journal Of Orthopaedic Surgery And Research
应用: WB
反应种属: Mouse
发表时间: 2023 Sept
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Citation
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Ferritin was involved in interleukin-17A enhanced osteogenesis through autophagy activation
Author: Wenlin Yuan, Yuting Yang, Yingming Wei, Xufei Yu, Jiaqi Bao, Jiahui Zhong, Zhongxiu Wang, Lili Chen
PMID: 37713787
期刊: International Immunopharmacology
应用: WB
反应种属: Mouse
发表时间: 2023 Sept
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Citation
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The osteogenic effects of sappanchalcone in vitro and in vivo
Author: Zheng X, Chen J, Liu J, et al
PMID: 37814383
期刊: Journal Of Periodontal Research
应用: WB
反应种属: Rat
发表时间: 2023 Oct
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Citation
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LIPUS can promote osteogenesis of hPDLCs and inhibit the periodontal inflammatory response via TLR5
Author: Ping Li, Zhipeng Zhang, Jingjing Liu, Hui Xue
PMID: 37983889
期刊: Oral Diseases
应用: WB
反应种属: Human
发表时间: 2023 Nov
-
Citation
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A novel lncRNA GM15416 regulates osteoblast apoptosis and differentiation through the c-Fos/Fas axis and mitigates osteoporosis
Author:
PMID: 37924900
期刊: International Journal Of Biological Macromolecules
应用: WB
反应种属: Mouse
发表时间: 2023 Nov
-
Citation
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Suppressing STAT3 activation impairs bone formation during maxillary expansion and relapse
Author: Xiao, X., Chen, J., Zhai, Q., Xin, L., Zheng, X., Wang, S., & Song, J.
PMID: 37162107
期刊: Journal Of Applied Oral Science
应用: IHC-P
反应种属: Rat
发表时间: 2023 May
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Citation
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Cyclic tensile force modifies calvarial osteoblast function via the interplay between ERK1/2 and STAT3
Author: Xiao, X., Zou, S., & Chen, J.
PMID: 36890454
期刊: BMC Molecular and Cell Biology
应用: WB
反应种属: Mouse
发表时间: 2023 Mar
-
Citation
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Bone marrow mesenchymal stem cell-derived exosomes loaded with miR-26a through the novel immunomodulatory peptide DP7-C can promote osteogenesis
Author:
PMID: 37195490
期刊: Biotechnology Letters
应用: WB
反应种属: Rat
发表时间: 2023 Jul
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Citation
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Osteoclast-Derived Exosomal miR-5134-5p Interferes with Alveolar Bone Homeostasis by Targeting the JAK2/STAT3 Axis
Author:
PMID: 37441084
期刊: International Journal Of Nanomedicine
应用: WB
反应种属: Mouse
发表时间: 2023 Jul
-
Citation
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Periodontal Ligament Stem Cell-Derived Extracellular Vesicles Enhance Tension-Induced Osteogenesis
Author:
PMID: 36538768
期刊: ACS Biomaterials Science & Engineering
应用: WB
反应种属: Human,Mouse
发表时间: 2023 Jan
-
Citation
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Glycyrrhizic acid alters the hyperoxidative stress-induced differentiation commitment of MSCs by activating the Wnt/β-catenin pathway to prevent SONFH
Author: Xu, H., Fang, L., Zeng, Q., Chen, J., Ling, H., Xia, H., Ge, Q., Wu, C., Zou, K., Wang, X., Wang, P., Yuan, W., Dong, R., Hu, S., Xiao, L., He, B., Tong, P., & Jin, H.
PMID: 36541285
期刊: Food & Function
应用: WB,IHC-P
反应种属: Human
发表时间: 2023 Jan
-
Citation
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Osteogenic effects of rapamycin on bone marrow mesenchymal stem cells via inducing autophagy
Author:
PMID: 36814286
期刊: Journal Of Orthopaedic Surgery And Research
应用: WB
反应种属: Rat
发表时间: 2023 Feb
-
Citation
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Divergent chondro/osteogenic transduction laws of fibrocartilage stem cell drive temporomandibular joint osteoarthritis in growing mice
Author:
PMID: 37626033
期刊: International Journal Of Oral Science
应用: IF
反应种属: Mouse
发表时间: 2023 Aug
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Citation
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Exendin-4 regulates the MAPK and WNT signaling pathways to alleviate the osteogenic inhibition of periodontal ligament stem cells in a high glucose environment
Author:
PMID: 37034502
期刊: Open Medicine
应用: WB
反应种属: Human
发表时间: 2023 Apr
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Citation
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Igf1 Regulates Fibrocartilage Stem Cells, Cartilage Growth, and Homeostasis in the Temporomandibular Joint of Mice
Author:
PMID: 36722289
期刊: Journal Of Bone And Mineral Research
应用: IHC-P
反应种属: Mouse
发表时间: 2023 Apr
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Citation
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miR-210-3p suppresses osteogenic differentiation of MC3T3-E1 by targeting brain derived neurotrophic factor (BDNF)
Author: Deng, L., Lai, S., Fan, L., Li, X., Huang, H., & Mu, Y.
PMID: 36104705
期刊: Journal Of Orthopaedic Surgery And Research
应用: WB
反应种属: Mouse
发表时间: 2022 Sept
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Citation
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Binding and inhibitory activities: A novel oral therapeutic agent for the treatment of hyperphosphataemia rats
Author:
PMID: 36076576
期刊: Biomedicine & Pharmacotherapy
应用: WB,IHC-P
反应种属: Rat
发表时间: 2022 Sep
-
Citation
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Lycium barbarum polysaccharide‐glycoprotein promotes osteogenesis in hPDLSCs via ERK activation
Author:
PMID: 36250230
期刊: Oral Diseases
应用: WB
反应种属: Human
发表时间: 2022 Oct
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Citation
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High-Fat Diet Increases Bone Loss by Inducing Ferroptosis in Osteoblasts
Author: Zhu, R., Wang, Z., Xu, Y., Wan, H., Zhang, X., Song, M., Yang, H., Chai, Y., & Yu, B.
PMID: 36277036
期刊: Stem Cells International
应用: IF-cell
反应种属: Mouse
发表时间: 2022 Oct
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Citation
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Hedgehog Signalling Contributes to Trauma-Induced Tendon Heterotopic Ossification and Regulates Osteogenesis through Antioxidant Pathway in Tendon-Derived Stem Cells
Author: Li, G., Deng, Y., Li, K., Liu, Y., Wang, L., Wu, Z., Chen, C., Zhang, K., & Yu, B.
PMID: 36421451
期刊: Antioxidants
应用: IHC-P
反应种属: Mouse
发表时间: 2022 Nov
-
Citation
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Quantitative Proteomics Revealed the Pharmacodynamic Network of Bugu Shengsui Decoction Promoting Osteoblast Proliferation
Author: Wei, X., Qi, B., Ma, R., Zhang, Y., Liu, N., Fang, S., Zhu, Y., Xie, Y., Dai, J., & Zhu, L.
PMID: 35145485
期刊: Frontiers In Endocrinology
应用: WB
反应种属: Mouse
发表时间: 2022 Jan
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Citation
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Nano SIM@ZIF-8 modified injectable High-intensity biohydrogel with bidirectional regulation of osteogenesis and Anti-adipogenesis for bone repair
Author: Mingxin Qiao, Zhengyi Xu, Xibo Pei, Yanhua Liu, Jian Wang, Junyu Chen, Zhou Zhu, Qianbing Wan
PMID: 18NOPMID25021204
期刊: Chemical Engineering Journal
应用: WB
反应种属: Rat
发表时间: 2022 Jan
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Citation
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Mechanisms of sphingosine-1-phosphate (S1P) signaling on excessive stress-induced root resorption during orthodontic molar intrusion
Author: Wang, H., Li, T., Wang, X., Guan, Y., Jiang, Y., Chen, S., Zou, S., & Duan, P.
PMID: 34363103
期刊: Clinical Oral Investigations
应用: IHC-P
反应种属: Rat
发表时间: 2022 Jan
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Citation
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Osteoinductive activity of bisdemethoxycurcumin and its synergistic protective effect with human amniotic mesenchymal stem cells against ovariectomy-induced osteoporosis mouse model
Author: Wei, J. X., Luo, Y., Xu, Y., & Xiao, J. H.
PMID: 35062070
期刊: Biomedicine & Pharmacotherapy
应用: WB
反应种属: Human
发表时间: 2022 Feb
-
Citation
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Dental niche cells directly contribute to tooth reconstitution and morphogenesis
Author: Hu, H., Duan, Y., Wang, K., Fu, H., Liao, Y., Wang, T., Zhang, Z., Kang, F., Zhang, B., Zhang, H., Huo, F., Yin, Y., Chen, G., Hu, H., Cai, H., Tian, W., & Li, Z.
PMID: 36476878
期刊: Cell Reports
应用: IF
反应种属: Mouse
发表时间: 2022 Dec
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Citation
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Hertwig's epithelial root sheath cells show potential for periodontal complex regeneration
Author: Fei Bi, Huilin Tang, Zhijun Zhang, Yun Lyu, Fangjun Huo, Guoqing Chen, Weihua Guo
PMID: 35912965
期刊: Journal Of Periodontology
应用: IHC-P,WB
反应种属: Rat
发表时间: 2022 Aug
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Citation
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Down‐regulation of hsa‐circ‐0107593 promotes osteogenic differentiation of hADSCs via miR‐20a‐5p/SMAD6 signaling
Author:
PMID: 35957556
期刊: Oral Diseases
应用: WB
反应种属: Human
发表时间: 2022 Aug
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Citation
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METTL5 regulates cranial suture fusion via Wnt signaling
Author:
PMID: NA7
期刊: Fundamental Research
应用: WB,IF
反应种属: Mouse
发表时间: 2022 Apr
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Citation
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Bioswitchable Delivery of microRNA by Framework Nucleic Acids: Application to Bone Regeneration
Author: Li, S., Liu, Y., Tian, T., Zhang, T., Lin, S., Zhou, M., Zhang, X., Lin, Y., & Cai, X.
PMID: 34716653
期刊: Small
应用:
反应种属: Mouse
发表时间: 2021 Nov
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Citation
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Mechanosensitive Piezo1 in Periodontal Ligament Cells Promotes Alveolar Bone Remodeling During Orthodontic Tooth Movement
Author: Jiang, Y., Guan, Y., Lan, Y., Chen, S., Li, T., Zou, S., Hu, Z., & Ye, Q.
PMID: 34880779
期刊: Front Physiology
应用: IHC-P,WB
反应种属: Rat
发表时间: 2021 Nov
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Citation
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Nano-Sized Hydroxyapatite Induces Apoptosis and Osteogenic Differentiation of Vascular Smooth Muscle Cells via JNK/c-JUN Pathway. International journal of nanomedicine, 16, 3633–3648.
Author: Liu, Q., Xiang, P., Chen, M., Luo, Y., Zhao, Y., Zhu, J., Jing, W., & Yu, H.
PMID: 34079254
期刊: International Journal Of Nanomedicine
应用: WB
反应种属: Human
发表时间: 2021 May
-
Citation
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Wnt antagonist secreted frizzled‐related protein I (sFRP1) may be involved in the osteogenic differentiation of periodontal ligament cells in chronic apical periodontitis
Author:
PMID: 33290588
期刊: International Endodontic Journal
应用: WB
反应种属: Human
发表时间: 2021 May
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Citation
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The role of EphB4/ephrinB2 signaling in root repair after orthodontically-induced root resorption. American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics, 159(3), e217–e232.
Author: Li, T., Wang, H., Liu, R., Wang, X., Huang, L., Wu, Z., Yin, X., Zou, S., & Duan, P.
PMID: 33487501
期刊: American Journal Of Orthodontics And Dentofacial Orthopedics
应用:
反应种属: Rat
发表时间: 2021 Mar
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Citation
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Lithium chloride promotes osteogenesis and suppresses apoptosis during orthodontic tooth movement in osteoporotic model via regulating autophagy. Bioactive materials, 6(10), 3074–3084.
Author: Huang, L., Yin, X., Chen, J., Liu, R., Xiao, X., Hu, Z., He, Y., & Zou, S.
PMID: 33778189
期刊: Bioactive Materials
应用: WB
反应种属: Mouse
发表时间: 2021 Mar
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Citation
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Nano-hydroxyapatite accelerates vascular calcification via lysosome impairment and autophagy dysfunction in smooth muscle cells
Author: Liu, Q., Luo, Y., Zhao, Y., Xiang, P., Zhu, J., Jing, W., Jin, W., Chen, M., Tang, R., & Yu, H.
PMID: 34541414
期刊: Bioactive Materials
应用: WB
反应种属: Human
发表时间: 2021 Jun
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Citation
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LRRc17 controls BMSC senescence via mitophagy and inhibits the therapeutic effect of BMSCs on ovariectomy-induced bone loss
Author:
PMID: 33865167
期刊: Redox Biology
应用: IHC-P
反应种属: Mouse
发表时间: 2021 Jul
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Citation
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The role of sphingosine-1-phosphate signaling pathway in cementocyte mechanotransduction. Biochemical and biophysical research communications, 523(3), 595–601.
Author: Peipei Duan
PMID: 31941604
期刊: Biochemical And Biophysical Research Communications
应用: WB
反应种属: Mouse
发表时间: 2020 Mar
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Citation
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Effect of interleukin-33 on cementoblast-mediated cementum repair during orthodontic tooth movement
Author: Xiaomeng Dong, Jie Feng, Ji Wen, Ding Bai, Hui Xu
PMID: 31986333
期刊: Archives Of Oral Biology
应用: WB
反应种属: Mouse
发表时间: 2020 Jan
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Citation
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Parathyroid hormone increases alveolar bone homoeostasis during orthodontic tooth movement in rats with periodontitis via crosstalk between STAT3 and β-catenin
Author:
PMID: 33380723
期刊: International Journal Of Oral Science
应用: WB
反应种属: Rat
发表时间: 2020 Dec
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Citation
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IL-1α Regulates Osteogenesis and Osteoclastic Activity of Dental Follicle Cells Through JNK and p38 MAPK Pathways
Author: Mingmei Meng, Yandi Chen, Xinlei Chen, Qiong Zhang, Weihua Guo, Xuedong Zhou, Jing Zou
PMID: 33107399
期刊: Stem Cells And Development
应用: IHC-P
反应种属: Rat
发表时间: 2020 Dec
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Citation
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Intermittent parathyroid hormone promotes cementogenesis in a PKA- and ERK1/2-dependent manner
Author:
PMID: 31026057
期刊: Journal Of Periodontology
应用: WB
反应种属: Mouse
发表时间: 2019 Sep
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